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Transparent and flexible fingerprint sensor array with multiplexed detection of tactile pressure and skin temperature

机译:透明且灵活的指纹传感器阵列,可多重检测触觉压力和皮肤温度

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We developed a transparent and flexible, capacitive fingerprint sensor array with multiplexed, simultaneous detection of tactile pressure and finger skin temperature for mobile smart devices. In our approach, networks of hybrid nanostructures using ultra-long metal nanofibers and finer nanowires were formed as transparent, flexible electrodes of a multifunctional sensor array. These sensors exhibited excellent optoelectronic properties and outstanding reliability against mechanical bending. This fingerprint sensor array has a high resolution with good transparency. This sensor offers a capacitance variation ~17 times better than the variation for the same sensor pattern using conventional ITO electrodes. This sensor with the hybrid electrode also operates at high frequencies with negligible degradation in its performance against various noise signals from mobile devices. Furthermore, this fingerprint sensor array can be integrated with all transparent forms of tactile pressure sensors and skin temperature sensors, to enable the detection of a finger pressing on the display.
机译:我们开发了一种透明,灵活的电容式指纹传感器阵列,该阵列具有多重功能,可同时检测移动智能设备的触觉压力和手指皮肤温度。在我们的方法中,使用超长金属纳米纤维和较细纳米线的混合纳米结构网络形成为多功能传感器阵列的透明,柔性电极。这些传感器具有出色的光电性能和出色的抗机械弯曲性。该指纹传感器阵列具有高分辨率和良好的透明度。与使用传统ITO电极的相同传感器图案相比,该传感器的电容变化约好17倍。这种带有混合电极的传感器还可以在高频下运行,对来自移动设备的各种噪声信号的性能影响可忽略不计。此外,该指纹传感器阵列可以与所有透明形式的触觉压力传感器和皮肤温度传感器集成在一起,从而能够检测到手指在显示器上的按压。

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